Medical Proteomics Laboratory, Institute of Medical Science, The University of Tokyo, 4-6-1, Shirokanedai, Minato-ku, Tokyo 108-8639, Japan.
Beauty Research, R&D, Kao Corporation, 2-1-3, Bunka, Sumida-ku, Tokyo 131-8501, Japan.
J Struct Biol. 2013 Sep;183(3):484-494. doi: 10.1016/j.jsb.2013.06.005. Epub 2013 Jun 19.
Since their first finding in wool 50years ago, keratin-associated proteins (KAPs), which are classified into three groups; high sulfur (HS) KAPs, ultra high sulfur (UHS) KAPs, and high glycine-tyrosine (HGT) KAPs, have been the target of curiosity for scientists due to their characteristic amino acid sequences. While HS and UHS KAPs are known to function in disulfide bond crosslinking, the function of HGT KAPs remains unknown. To clarify the function as well as the binding partners of HGT KAPs, we prepared KAP8.1 and other KAP family proteins, the trichocyte intermediate filament proteins (IFP) K85 and K35, the head domain of K85, and the C subdomain of desmoplakin C-terminus (DPCT-C) and investigated the interactions between them in vitro. Western blot analysis and isothermal titration calorimetry (ITC) indicate that KAP8.1 binds to the head domain of K85, which is helically aligned around the axis of the intermediate filament (IF). From these results and transmission electron microscopy (TEM) observations of bundled filament complex in vitro, we propose that the helical arrangement of IFs found in the orthocortex, which is uniquely distributed on the convex fiber side of the hair, is regulated by KAP8.1. Structure-dependent binding of DPCT-C to trichocyte IFP was confirmed by Western blotting, ITC, and circular dichroism. Moreover, DPCT-C also binds to some HGT KAPs. It is probable that such bidirectional binding property of HGT KAPs contribute to the mechanical robustness of hair.
自 50 年前首次在羊毛中发现角蛋白相关蛋白 (KAP) 以来,由于其特征性的氨基酸序列,科学家们一直对 KAP 产生了浓厚的兴趣。KAP 分为三类:高硫 (HS) KAP、超高硫 (UHS) KAP 和高甘氨酸-酪氨酸 (HGT) KAP。HS 和 UHS KAP 已知在二硫键交联中起作用,而 HGT KAP 的功能仍然未知。为了阐明 HGT KAP 的功能以及其结合伴侣,我们制备了 KAP8.1 和其他 KAP 家族蛋白、毛母质中间丝蛋白 (IFP) K85 和 K35、K85 的头部结构域以及桥粒芯蛋白 C 末端的 C 亚结构域 (DPCT-C),并在体外研究了它们之间的相互作用。Western blot 分析和等温热力学滴定 (ITC) 表明 KAP8.1 与 K85 的头部结构域结合,该头部结构域围绕中间丝 (IF) 的轴螺旋排列。基于这些结果以及体外束状纤维复合物的透射电子显微镜 (TEM) 观察,我们提出在正皮质中发现的 IF 螺旋排列是由 KAP8.1 调节的,该排列在毛发凸纤维侧上是独特分布的。Western blot、ITC 和圆二色性证实了 DPCT-C 与毛母质 IFP 的结构依赖性结合。此外,DPCT-C 还与一些 HGT KAP 结合。HGT KAP 具有这种双向结合特性,可能有助于毛发的机械强度。